首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Solubility and Diffusivity of CO2 in [hxmim][NTf2], [omim][NTf2], and [dcmim][NTf2] at T= (298.15, 308.15, and 323.15) K and Pressures up to 20 bar
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Solubility and Diffusivity of CO2 in [hxmim][NTf2], [omim][NTf2], and [dcmim][NTf2] at T= (298.15, 308.15, and 323.15) K and Pressures up to 20 bar

机译:在[hxmim] [NTf2],[omim] [NTf2]和[dcmim] [NTf2]中,当T =(298.15、308.15和323.15)K且压力高达20 bar时,CO2的溶解度和扩散率

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Solubilities and diffusion coefficients of CO2 absorption in the ionic liquids (ILs) [hrniim][NTf2], [omim][NTf2], and [dcmim] [NTf2] at temperatures of (298.15, 308.15, and 323.15) K and pressures up to 20 bar were obtained by thermogravimetric measurements using a high pressure sorption analyzer with magnetic suspension balance operating in dynamic mode. The effect of the length of the alkyl side chain of the imidazolium cation and the operating conditions on the thermodynamics and kinetics of the CO2 absorption process in ILs were evaluated. Absorption data confirmed that the CO2 solubility in ILs increases with increasing length of the alkyl side chain of the cation and with decreasing temperatures and increasing pressures. The diffusion coefficients of CO2, calculated by applying a mass diffusion model, decrease with increasing lengths of the alkyl side chain of the cation and increase with both temperature and pressure of absorption. These results illustrate the importance of considering both thermodynamic and kinetic aspects in the selection of an IL as absorbent and the operating conditions for developing absorption processes based on ILs. In addition, the empirical correlation of Wilke—Chang was successfully applied as an alternative to estimate the diffusion coefficients of the systems.
机译:在(298.15、308.15和323.15)K温度下,离子液体(ILs)[hrniim] [NTf2],[omim] [NTf2]和[dcmim] [NTf2]中吸收的CO2的溶解度和扩散系数通过使用具有动态模式操作的磁悬浮天平的高压吸附分析仪通过热重测量获得20至20 bar的压力。评估了咪唑阳离子的烷基侧链长度和操作条件对离子液体中CO2吸收过程的热力学和动力学的影响。吸收数据证实,ILs中的CO2溶解度随阳离子烷基侧链长度的增加以及温度和压力的增加而增加。通过应用质量扩散模型计算出的CO2扩散系数,随着阳离子烷基侧链长度的增加而降低,并随温度和吸收压力的增加而增加。这些结果说明了在选择IL作为吸收剂时要考虑热力学和动力学方面的重要性,以及基于IL开展吸收过程的操作条件。另外,威尔克-张的经验相关性已成功地用作估计系统扩散系数的替代方法。

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